首页> 外文会议>Conference on Space Telescopes and Instrumentation >The Joint Efficient Dark-energy Investigation (JEDI): Measuring the cosmic expansion history from type la supernovae
【24h】

The Joint Efficient Dark-energy Investigation (JEDI): Measuring the cosmic expansion history from type la supernovae

机译:联合高效的黑能调查(JEDI):测量La Supernovae类型的宇宙扩张历史

获取原文

摘要

JEDI (Joint Efficient Dark-energy Investigation) is a candidate implementation of the NASA-DOE Joint Dark Energy Mission (JDEM). JEDI will probe dark energy in three independent methods: (1) type la supernovae, (2) baryon acoustic oscillations, and (3) weak gravitational lensing. In an accompanying paper, an overall summary of the JEDI mission is given. In this paper, we present further details of the supernova component of JEDI. To derive model-independent constraints on dark energy, it is important to precisely measure the cosmic expansion history, H(z), in continuous redshift bins from z ~ 0-2 (the redshift range in which dark energy is important). SNe la at z > 1 are not readily accessible from the ground because the bulk of their light has shifted into the near-infrared where the sky background is overwhelming; hence a space mission is required to probe dark energy using SNe. Because of its unique near-infrared wavelength coverage (0.8-4.2 u.m), JEDI has the advantage of observing SNe la in the rest frame J band for the entire redshift range of 0 < z < 2, where they are less affected by dust, and appear to be nearly perfect standard candles. During the first year of JEDI operations, spectra and light curves will be obtained for ~4,000 SNe la at z < 2. The resulting constraints on dark energy are discussed, with special emphasis on the improved precision afforded by the rest frame near-infrared data.
机译:Jedi(联合高效的黑能调查)是候选国家航空航天局联合暗能使委派团(JDEM)的候选人。 Jedi将以三种独立的方法探测暗能量:(1)型La Supernovae,(2)Baryon声学振荡,和(3)弱引力透镜。在伴随的论文中,给出了JEDI任务的总结。在本文中,我们提供了JEDI的超新星组成部分的更多细节。为了在暗能中获得与模型无关的约束,重要的是精确地测量来自Z〜0-2的连续红移箱中的宇宙膨胀历史,H(Z)(暗能的红移范围很重要)。 Z> 1的SNE La从地面上不易易于访问,因为他们的大部分光线已经转移到天空背景压倒性的近红外线;因此,使用SNE探测暗能需要空间任务。由于其独特的近红外波长覆盖率(0.8-4.2 um),Jedi具有观察RET框架J频段中的SNE La的优势,为0

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号